A single atom of lithium can combine with a single atom of iodine to create electron energy stability for both atoms. True or false? ...?

Answers

Answer 1

Answer:

The answer is: TRUE

Explanation:

Hello!

Let's solve this!

This is true, since the Lithium atom has a valence number of +1, this means an electron to yield.

For its part, the iodine has valence number -1, this means a place to accept electrons.

When joined they make a perfect combination where it has high electronic stability.

We conclude that the answer is: TRUE


Related Questions

Which has a higher frequency, a neutron or electron? Why?

Answers

The electron, due to the way an electron orbits the nucleus of an atom. 

According to Quantum Mechanics, electrons do not really orbit the nucleus of an atom. In fact, the most tightly bound state, the 1s orbital, has no angular momentum at all. This would be the state with the most "kinetic energy" and yet there is no "orbital" motion at all in this state.  

Draw a complete Lewis structure for the conjugate acid of nitromethane that shows all bonds, unshared electron pairs, and minimized formal charges, where appropriate.

Answers

Answer:

Lewis structures are shown below

Explanation:

In Lewis structure of nitromethane, a negative charge is present on oxygen atom in nitro group.Hence this oxygen atom acts as a basic center preferably.Therefore conjugate acid of nitromethane should be drawn by adding a hydrogen atom with this oxygen atom.Lewis structure of nitromethane as well as it's conjugate acid has been shown below including all the lone pairs and formal charges

Chemical changes ________ involve the breaking and making of chemical bonds.

A) Always
B) Never
C) Sometimes

Fill in the blank

Answers

The correct answer that would best complete the given statement above would be option A. Chemical changes ALWAYS involve the breaking and making of chemical bonds. When there is chemical change, a new compound is being formed. If a new compound is not formed, then it is not considered as a chemical change. When a new compound is formed, therefore, there is the breaking and making of chemical bonds. Hope this helps.

Answer:

A:  Always.

Explanation:

Got it correct on Oddesyware

what is the name given to the electrons in the highest occupied energy level of an atom

Answers

The electrons in the highest occupied energy level of an atom are called valence electrons.
They are known as Valence Electrons.

Monel metal is a corrosion-resistant copper-nickel alloy used in the electronics industry. A particular alloy with a density of 8.80 g/cm3 and containing 0.073% Si by mass is used to make a rectangular plate that is 15.0 cm long, 12.5 cm wide, and 2.50mm thick and has a 2.50-cm-diameter hole drilled through its center such that the height of the hole is 2.50mm .

The silicon in the plate is a mixture of naturally occurring isotopes. One of the those isotopes is silicon-30, which has an atomic mass of 29.97376 amu and a percent natural abundance of 3.10%

How many silicon-30 atoms are found in this plate?
Express your answer numerically using two significant figures.

Answers

The number of silicon-30 atoms in the plate can be calculated using the concept of percent abundance and Avogadro's number. Plugging in the given values, the calculated number of silicon-30 atoms is approximately 4.59 x 10^19.

The number of silicon-30 atoms in the plate can be calculated using the concept of percent abundance and Avogadro's number.

First, we need to determine the mass of the silicon-30 in the plate.

The mass of silicon in the plate can be found by multiplying the mass of the plate by the mass fraction of silicon:

Mass of silicon = Mass of plate x Mass fraction of silicon = (Volume of plate x Density of plate) x Mass fraction of silicon

Next, we can calculate the number of moles of silicon-30:

Number of moles of silicon-30 = Mass of silicon / molar mass of silicon-30

Finally, we can convert the number of moles into the number of atoms using Avogadro's number:

Number of silicon-30 atoms = Number of moles of silicon-30 x Avogadro's number

Plugging in the values, we get:

Number of silicon-30 atoms = (Volume of plate x Density of plate x Mass fraction of silicon) / molar mass of silicon-30 x Avogadro's number

Now, let's calculate the values:

Volume of plate = Length x Width x Thickness - Area of hole x Height of hole

Area of hole = π x (Diameter of hole / 2)^2

Plugging in the values, we get:

Volume of plate = (15.0 cm x 12.5 cm x 2.50 mm) - (π x (2.50 cm / 2)^2 x 2.50 mm)

Now, we can substitute the calculated values into the formula to find the number of silicon-30 atoms:

Number of silicon-30 atoms = ((15.0 cm x 12.5 cm x 2.50 mm) - (π x (2.50 cm / 2)^2 x 2.50 mm) x 8.80 g/cm^3 x 0.073% Si) / (29.97376 g/mol) x (0.0310)

Calculating this expression gives approximately 4.59 x 10^19 silicon-30 atoms in the plate.

Final answer:

By calculating the mass of the Monel plate, the mass of silicon within it using the percent composition, and applying the natural abundance of silicon-30, we find approximately 1.9 × 10²⁰ silicon-30 atoms in the plate.

Explanation:

To calculate the number of silicon-30 atoms in a Monel metal plate with a density of 8.80 g/cm³ that measures 15.0 cm by 12.5 cm and is 2.50 mm thick, having a hole of 2.50 cm diameter, we need to follow these steps:

Determine the volume of the plate (including the hole).

Calculate the mass of the plate using its density.

Find the mass of silicon in the plate using the percent composition.

Calculate the number of moles of silicon based on its mass.

Use the percent natural abundance of silicon-30 to find the moles of silicon-30 specifically.

Use Avogadro's number to convert moles of silicon-30 to the number of atoms.

Let's perform the calculation:

Volume of plate without the hole = (15.0 cm × 12.5 cm × 0.25 cm) = 46.875 cm³

Volume of the hole = (π × (1.25 cm)²) × 0.25 cm = 1.227 cm³

Total volume = 46.875 cm³ - 1.227 cm³ = 45.648 cm³

Mass of plate = Density × Volume = 8.80 g/cm³ × 45.648 cm³ = 401.7 g

Mass of Si in plate = 401.7 g × 0.00073 = 0.293 g

Moles of Si = Mass / Molar mass = 0.293 g / 28.085 g/mol = 0.01044 mol

Moles of Si-30 = Total moles of Si × Percent abundance of Si-30 = 0.01044 mol × 0.0310 = 0.0003236 mol

Number of Si-30 atoms = Moles of Si-30 × Avogadro's number = 0.0003236 mol × 6.02 × 10²³ atoms/mol

The number of silicon-30 atoms in the plate is approximately 1.9 × 10²⁰ atoms, rounded to two significant figures.

how many significant gigures are in each mesasurments 303,000mm

Answers

3 Sig FIgs in 303,000 mm
Any nonzero is a sig fig.
Any zero between two non zeros is a sig fig.

what is the molar mass of AuCl3

Answers

Answer:

303.32557 g/mol.

Explanation:

Gold III Chloride is also known as acid gold trichloride.

PROPERTIES OF GOLD III CHLORIDE,AuCl3:

Gold III Chloride exist in colour appearance of Red crystals,and yellow crystals. It has a melting point of 254 °C and a density of

4.7 g/cm3. AuCl3 exist as a dimer( Au2Cl6) and it is somewhat covalent.

Molar mass is the the mass of one mole of a substance and is expressed in g/mol. Gold atomic mass is 196.96657, chlorine has 35.453.

Hence, molar mass of AuCl3= atomic number of Gold + atomic mass of chlorine × (number of atoms of chlorine in AuCl3).

Molar mass of AuCl3 = 196.96657 + (35.453 × 3). = 196.96657 + 106.359.

Molar mass of AuCl3= 303.32557 g/mol.

The molar mass of  compound AuCl₃is 303.32557 g/mole.

Molar mass of a compound or a molecule is defined as the mass of the elements which are present in it.The molar mass is considered to be a bulk quantity not a molecular quantity. It is often an average of the of the masses at many instances.

Molar masses of an element are given as relative atomic masses while that of compounds is the sum of relative atomic masses which are present in the compound.

Molar mass of AuCl₃ = 196.96657 + (35.453 × 3). = 196.96657 + 106.359.

Molar mass of AuCl₃= 303.32557 g/mol.

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Select the ion.

a) NO2
b)H2SO4
c) Al+3 ...?

Answers

i would go with C. Al+3

Is Co a chemical compound

Answers

I'm pretty sure it is. 
Well, assuming that you did not mean to write CO, then Co is not a chemical compound, but it is the chemical symbol for a metal element on the periodic table, Co = cobalt.

How do I calculate the molecular formula for a compound with an empirical formula CH2O and a molar mass of 90 g/mol?

Answers

CH2O = 12 + 2 + 16 = 30 g/mol
90 g/mol / 30 g/mol = 3
3 x (CH2O) = C3H6O3

How many times does the moon rotate on its axis in one month

Answers

Moon only rotates for "Once" on its axis in one month. 'cause

It's Revolution = Rotation

Hope this helps!

phosphorus has an atomic mass of 31 and an atomic number of 15 ,so the number of nuetrons must be ?

Answers

It should be 16 neutrons
The number of neutrons is the difference in Atomic mass and atomic number.
Thus, number of neutrons:
31 - 15
= 16 neutrons

In each of the following pairs of compounds, which compound is likely to be more soluble in CCl4?

a) Br2 or NaBr
b) CH3OH or C6H11OH
c) CS2 or KOH
d) I2 or CaF2

Answers

Final answer:

The principle 'like dissolves like' is used to determine the solubility of compounds in CCl₄. These are more likely to dissolve: Br₂ over NaBr, C₆H₁₁OH over CH₃OH, CS₂ over KOH, and I₂ over CaF₂.

Explanation:

The solubility of compounds in CCl₄ can be calculated using the principle 'like dissolves like', which means that substances with similar types of molecular interactions dissolve in each other. Therefore, compounds with similar polarity will dissolve in each other.

a) Br₂ vs NaBr: Br₂, being nonpolar like CCl₄, is expected to be more soluble. NaBr is an ionic compound, and hence it won't dissolve well.b) CH₃OH vs C₆H₁₁OH: Both are alcohols but CH₃OH contains polarity due to the presence of O-H bonds whereas C6H11OH is less polar. Therefore, C6H11OH would be more soluble in CCl₄.c) CS₂ vs KOH: CS₂ is a nonpolar compound like CCl₄, hence it is expected to be more soluble. KOH is ionic and wouldn't dissolve well.d) I₂ vs CaF₂: I₂ is nonpolar and would therefore be more soluble in CCl₄. CaF₂ is ionic and wouldn't dissolve well.

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Final answer:

The more soluble compounds in carbon tetrachloride (CCl₄) are those that are non-polar: Br₂, C₆H₁₁OH, CS₂, and I₂, because CCl₄ is a non-polar solvent and 'like dissolves like'.

Explanation:

The question asks which compound in each pair is likely to be more soluble in carbon tetrachloride (CCl₄). Solubility often depends on the similarity principle 'like dissolves like', meaning that polar solvents dissolve polar substances, and non-polar solvents dissolve non-polar substances.

a) Br₂ or NaBr: Br₂ (bromine) is a non-polar molecule, while NaBr (sodium bromide) is an ionic compound. Br₂ will be more soluble in CCl₄ since both are non-polar.

b) CH₃OH or C₆H₁₁OH: C₆H₁₁OH (cyclohexanol) is less polar and has a longer non-polar hydrocarbon chain compared to CH₃OH (methanol). Thus, C₆H₁₁OH will be more soluble in CCl₄.

c) CS₂ or KOH: CS₂ (carbon disulfide) is a non-polar molecule, while KOH (potassium hydroxide) is an ionic and polar compound. CS₂ will be more soluble in CCl4.

d) I2 or CaF₂: I₂ (iodine) is a non-polar molecule, while CaF₂ (calcium fluoride) is an ionic compound. I2 will be more soluble in CCl₄.

HELLLLLLLLLLLLP ME PLS 10 points pls

What do the symbols in parenthesis indicate?
CaCl2(aq) + 2AgNO3(aq)) → Ca(NO3)2(aq) + 2AgCl(s)

1 the catalyst used in the reaction

2 the number of atoms of each reactant and product

3 the physical state of each reactant and product

4 the number of units of each reactant and product

Answers

I think it is 3, but I'm not sure

What is the mass of 5.05×1021 platinum atoms?

Answers

Answer: 1.6 gram

Explanation:

According to avogadro's law, 1 mole of every substance occupies 22.4 L at STP and contains avogadro's number [tex]6.023\times 10^{23}[/tex] of particles.

To calculate the moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given atoms}}{\text {Avogadro's Number}}[/tex]

[tex]\text{Number of moles of water}=\frac{5.05\times 10^{21}}{6.023\times 10^{23}}=8.4\times 10^{-3}moles[/tex]

1 mole of Platinum [tex]Pt[/tex] weighs 195 g

[tex]8.4\times 10^{-3}moles[/tex]  of Platinum [tex]Pt[/tex] weigh =[tex]\frac{195}{1}\times 8.4\times 10^{-3}=1.6g[/tex]

Thus mass of [tex]5.05\times 10^{21}[/tex] platinum atoms is 1.6 gram.

Final answer:

To calculate the mass of 5.05×10²¹ platinum atoms, first find the number of moles using Avogadro's number, then multiply by the atomic mass of Pt, yielding approximately 1.636 grams of Pt.

Explanation:

To determine the mass of 5.05×10²¹platinum atoms, we need to use Avogadro's number (6.022×10²³ atoms/mol) and the atomic mass of platinum (Pt), which is approximately 195 g/mol. First, we calculate the number of moles of platinum atoms:

Number of moles = Number of atoms / Avogadro's number
Number of moles= 5.05×10²¹Pt atoms / 6.022×10²³ Pt atoms/mol
= 8.39×10⁻³ mol Pt

Next, we find the mass of the platinum atoms by multiplying the number of moles by the atomic mass of platinum:

Mass = Number of moles × Atomic mass of Pt
= 8.39×10⁻³ mol Pt × 195 g/mol
= 1.63605 g of Pt

Therefore, the mass of 5.05×10²¹ platinum atoms is approximately 1.636 g.

The Maunder Minimum would include which of the following years?

Answers

I hope this helps.
The Maunder Minimum, also known as the "prolonged sunspot minimum", is the name used for the period starting in about 1645 and continuing to about 1715

When is a secondary source more helpful than a primary source?
A: When you are an expert in the field being studied in the experiment
B: When you do not need many details about the experiment
C: When you want to know the exact data values
D: When you do not need to know the conclusion of the experiment

Answers

pretty confident the answer is b

Answer:

B: When you do not need many details about the experiment

Explanation:

Primary Sources are the first-hand accounts of the topic.

Secondary sources are the scholarly books or articles.

The secondary source interprets and also analyzes the primary sources.

Thus, secondary data can be used as a precursor for publishing new primary data.

Thus, Option B: When you do not need many details about the experiment is correct.

What role do valence electrons play in the formation of compounds from elements?

Answers

valence electrons predict how many bonds will happen: a single bond, double bond, or triple bond. Also, the valence electrons tell us what type of bond will happen: ionic, covalent, or metallic.

Final answer:

Valence electrons are pivotal in chemical bonding, participating in either sharing (covalent bonding) or transferring (ionic bonding) to achieve stable electronic configurations aimed at fulfilling the octet rule. Electronegativity influences the nature of these bonds, and the valence bond theory explains the formation of stable compounds through energy considerations.

Explanation:

Valence electrons play a crucial role in the formation of compounds from elements. These electrons are located in the atom's outermost shell and are the primary participants in chemical bonding. Elements combine to form compounds by either sharing valence electrons (covalent bonding) or transferring them (ionic bonding) to achieve stable electronic configurations, often aiming for the octet rule, which is a full set of eight valence electrons that provides stability, reminiscent of the noble gases.

Electronegativity significantly influences how these electrons are shared or transferred. Atoms with higher electronegativity tend to attract valence electrons more strongly, leading to polar covalent or ionic bonds depending on the difference in electronegativity between the bonding atoms.

What is the most basic building block of matter?
Question 2 options:

the atom

the quark

the electron

the proton

Answers

Answer would be A)the atom

: The Atom

~Sarah Robinsen

The solid sink to the bottom when placed in a container of water. what does this tell you about it's density

Answers

That the total density of the solid is more then the water

It can be concluded that the density of solid is greater than 1 g/cm³.

We have a solid which sank to the bottom when placed in water.

We have to investigate about its density.

What is the density of water?

The density of water is 1 g/cm³.

According to the question -

If a Solid body sinks in water, then it can be concluded that the density of this solid body is greater than that of water. Mathematically -

ρ(b) > 1 g/cm³

Hence, it can be concluded that the density of solid is greater than

1 g/cm³.

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A biochemist performs an experiment to study the behavior of water molecules near proteins. He concludes that water molecules occur in groups of five in the presence of proteins. Skepticism is important in this scenario because it would help him to

Answers

Final answer:

Skepticism is important to the biochemist to critically evaluate and verify the conclusion about the behavior of water molecules near proteins.

Explanation:

Skepticism is important in this scenario because it would help the biochemist to critically evaluate and verify the conclusion that water molecules occur in groups of five in the presence of proteins. By maintaining a skeptical mindset, the biochemist can consider alternative explanations, conduct further experiments, and review existing research to ensure the validity and accuracy of the conclusion. Skepticism plays a crucial role in scientific inquiry and helps to ensure that scientific findings are reliable and trustworthy.

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When 1 mole of tin IV oxide is heated with 2 moles of hydrogen gas, 1 mole of tin metal and 2 moles of water vapor are generated. SnO2 + 2H2 → Sn + 2H2O How many moles of tin metal will be produced when 0.74 moles of tin IV oxide is heated?

Answers

1 of sno2 : 1 of sn = 0.74 of sno2 : x of sn, this is the proportion you need.
so
x is for mol of tin

x = 0.74 mol 

Answer : The moles of tin metal produced will be, 0.74 mole

Explanation : Given,

Moles of [tex]SnO_2[/tex] = 0.74 mole

The given balanced chemical reaction is,

[tex]SnO_2+2H_2\rightarrow Sn+2H_2O[/tex]

From the balanced chemical reaction, we conclude that

As, 1 mole of [tex]SnO_2[/tex] react to give 1 mole of Sn

So, 0.74 mole of [tex]SnO_2[/tex] react to give 0.74 mole of Sn

Therefore, the moles of tin metal produced will be, 0.74 mole

increase Crop Production food Engineers combine two plants so that each plant strength compensates for the others weakness what is this technique called

Answers

The answer is crossbreeding

Answer: Cross breeding

Explanation: Cross breeding can be defined as the method by which two plants can be crossed to produce the desired character and compensate the useless characters shown by the plants individually.

Suppose a plant produces pink flower but small slower and another plant produces white flower but big flower.

If we want big pink colored flower then, these two plants can be crossed among each other so to produce the desired characters and hide the useful characters.

Which temperature is coldest??

Answers

The lowest temperature is the coldest. 

The temperature 0 degree Celsius is the coldest temperature , Option B is the correct answer.

The complete Question is attached with the answer in form of image

What is Temperature ?

The degree of heat a body has measured by the thermometer is called Temperature.

It is asked in the question to determine , which temperature is coldest among the option given

The temperature 0 degree Celsius is the coldest temperature among the options given as it is the lowest

Therefore Option B is the correct answer.

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A mixture of methane and air is used in a lime kiln. Explain why?

Answers

As the  methane combusts with the oxygen in the air. Methane is also known as natural gas.

A molecule of carbon dioxide (CO2) contains two polar covalent bonds. Why is the molecule nonpolar?

Answers

The molecule is non-polar, because the difference in electronegativity between the two sides of the structure equals 0. The electronegativity difference between O (3.5) and C(2.5) is 1 and also on the other side, cancelling each other.

Answer:

The molecule has a symmetrical distribution of charge.

Explanation:

A CO2 molecule is nonpolar because the molecule is linear and has a symmetrical distribution of charge as seen in this diagram:

If 255 g of water has 10.0 g of nacl dissolved into initially, how much nacl must be added in order to raise the mass percent of nacl by 10%

Answers

Answer: 30.8 g

Explanation:

______is a mixture dead organic material that can be used as fertilizer

Answers

The answer to this is compost.

Answer:

Compost is a mixture dead organic material that can be used as fertilizer

Explanation:

Compost is a natural organic fertilizer that is prepared with different organic materials, providing nutrients and improving soil structure. Compost converts waste into fertilizer and valuable organic matter for soils.

The transformation of organic matter is carried out with composting, that is, the controlled decomposition of organic materials. Among them are fruits, pruning remains, vegetables, among others. The result of this procedure is a completely organic product that improves the soil structure and provides the necessary nutrients to the soil, all naturally.

Compost has a wide variety of advantages. Among them, it can be mentioned that urban waste is reduced considerably because it minimizes environmental problems related to its treatment and transportation. The soil structure will also be improved, helping with water retention, ventilation and the possible effects of frost. And the earth will eventually contain more organic matter and more nutrients; and it is possible to avoid the use of chemical fertilizers that can negatively affect the soil or the health of people. In addition, the lack of these substances produces an increase in the amount of microorganisms beneficial to the life cycle. Earthworms and other organisms will aerate the earth, prevent it from composting and favor the roots of plants.

So, "compost is a mixture dead organic material that can be used as fertilizer"

1. Gases are made up of molecules which are relatively far apart.
2. The molecules are in motion at high speeds.
3. The molecular collisions are perfectly elastic.
4. Increase in temperature increases the kinetic energy of the molecules.

Which of the above assumptions accounts for the compressibility of gases as compared to liquids and solids?

A) 1
B) 2
C) 3
D) 4
E) 2 and 3
F) 3 and 4

Answers

The answer is A) 1...

The assumption that accounts for the compressibility of gases is that gases consist of molecules which are relatively far apart, meaning the correct answer is A) 1.

In regards to the compressibility of gases, the relevant kinetic molecular theory assumption is that gases consist of molecules which are relatively far apart. This is captured in assumption 1 provided in the student's question. When the particles are far apart, there is a considerable amount of empty space between them compared to liquids and solids. This space allows gases to be compressed, as-the molecules can be brought closer together without significant repulsive forces coming into play due to the fact that there are no significant intermolecular forces acting over these large distances. Therefore, the correct answer to the question - which assumption accounts for the compressibility of gases as compared to liquids and solids - is A) 1.

How many moles of oxygen are necessary to completely react with propane (C3H8) to produce 16.3 mol of water according to the following balanced chemical equation? ________________________________________________________________________ C3H8 + 5 O2 -> 3 CO2 + 4 H2O
I tried doing these they are due by 12:00 please help i have 2 more like this

Answers

Answer:

20.375 moles of oxygen are necessary to completely react with propane to produce 16.3 moles of water.

Explanation:

[tex]C_3H_8 + 5O_2\rightarrow 3 CO_2 + 4H_2O[/tex]

Mole sof water formed = 16.3 moles

According to reaction , 4 moles of water are obtained from 5 moles of oxygen.

Then 16.3 moles of oxygen will be obtained from:

[tex]\frac{5}{4}\times 16.3 mol =20.375 mol[/tex] of oxygen

20.375 moles of oxygen are necessary to completely react with propane.

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